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Oil field wastewater treatment in Biological Aerated Filter by immobilized microorganisms

机译:固定化微生物处理曝气生物滤池中的油田废水

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As an alternative to the conventional activated sludge (CAS) process, this paper investigates the use of B350M and B350 group microorganisms immobilized on carriers in a pair of Biological Aerated Filter (BAF) reactors to pre-treat oil field wastewater before desalination. By operating the biodegradation system for 142 days with a hydraulic retention time (HRT) of 4 h and volumetric load 1.07 kg COD (m~3 d)~(-1) at last, the reactor immobilized with B350M achieved mean degradation efficiencies of 78% for total organic carbon (TOC) and 94% for oil, whereas that with B350 only reached 64% for TOC and 86% for oil. The influent wastewater contains organic substances from C_(13)H_(28) to C_(32)H_(66), and a total of 16 polycyclic aromatic hydrocarbons (PAHs). The degradation efficiencies of PAHs in the BAF immobilized with B350M and B350 microorganisms are 90% and 84%, respectively. It is observed that the biological diversity of microorganisms in the reactor containing B350M (seven more strains of bacteria survive) is richer than in that containing B350. A large quantity of filamentous microorganisms developed in both reactors without causing foaming or bulking.
机译:作为常规活性污泥(CAS)工艺的替代方法,本文研究了在一对生物曝气滤池(BAF)反应器中固定在载体上的B350M和B350群微生物在淡化之前对油田废水进行预处理的方法。通过将生物降解系统运行142天,水力停留时间(HRT)为4 h,最终体积负载为1.07 kg COD(m〜3 d)〜(-1),用B350M固定的反应器的平均降解效率为78总有机碳(TOC)的百分比为94%,石油为94%,而使用B350的有机碳仅达到TOC的64%和石油的86%。进水废水中含有C_(13)H_(28)至C_(32)H_(66)的有机物质,以及总共16种多环芳烃(PAHs)。在固定有B350M和B350微生物的BAF中,PAHs的降解效率分别为90%和84%。观察到,在含有B350M的反应器中微生物的生物多样性(七种以上的细菌得以存活)比含有B350的反应器中的微生物更丰富。在两个反应器中产生了大量丝状微生物,而不会引起泡沫或膨胀。

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